A quantum algorithm pipeline is proposed that maps forced, nonlinear, and time-dependent oscillator networks to nonlinear Schrodinger equations and then to Hermitian Hamiltonian simulation, claiming near-linear time cost; the central symmetrization proof contains internal inconsistencies.
Linear combination of hamiltonian simulation for nonunitary dynamics with optimal state preparation cost
1 Pith paper cite this work. Polarity classification is still indexing.
1
Pith paper citing it
citation-role summary
method 1
citation-polarity summary
fields
quant-ph 1years
2025 1verdicts
REJECT 1roles
method 1polarities
use method 1representative citing papers
citing papers explorer
-
Simulating Time Dependent and Nonlinear Classical Oscillators through Nonlinear Schr\"odingerization
A quantum algorithm pipeline is proposed that maps forced, nonlinear, and time-dependent oscillator networks to nonlinear Schrodinger equations and then to Hermitian Hamiltonian simulation, claiming near-linear time cost; the central symmetrization proof contains internal inconsistencies.